Synthesis and study of the cluster [Pd(AuPPh 3) 6(HgNO 3)](NO 3) by reversed-phase high-performance liquid chromatography, thermoanalysis, infrared, nuclear magnetic resonance, and fast atom bombardment mass spectrometry

The addition reaction of Hg 0 and Hg 2 2+ to the bimetallic cluster [(PPh 3)Pd(AuPPh 3) 6](NO 3) 2 (I) has been studied. The reaction, monitored by HPLC, showed the time elapsed to obtain the pure cluster [Pd(AuPPh 3) 6(HgNO 3)](NO 3) (II). The use of 31P{ 1H} NMR, IR spectra, FABMS and thermoanalys...

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Veröffentlicht in:Journal of Chromatography A 1999-11, Vol.862 (1), p.29-38
Hauptverfasser: Sotelo, Adriana F, Felicissimo, Anna Maria P
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description The addition reaction of Hg 0 and Hg 2 2+ to the bimetallic cluster [(PPh 3)Pd(AuPPh 3) 6](NO 3) 2 (I) has been studied. The reaction, monitored by HPLC, showed the time elapsed to obtain the pure cluster [Pd(AuPPh 3) 6(HgNO 3)](NO 3) (II). The use of 31P{ 1H} NMR, IR spectra, FABMS and thermoanalysis data was very useful for confirming the results. The reaction was monitored by taking five samples after 3, 6, 17, 21 and 24 h. The process was finalised after 24 h and the pure trimetallic cluster II, free of the intermediate, appeared in the chromatogram as a large, unique peak.
doi_str_mv 10.1016/S0021-9673(99)00913-9
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subjects Chemistry
Chromatography, High Pressure Liquid
Coordination compounds
Exact sciences and technology
Gold clusters
Hot Temperature
Inorganic chemistry and origins of life
Magnetic Resonance Spectroscopy
Organometallic Compounds - chemical synthesis
Palladium–gold
Phosphine
Preparations and properties
Spectrometry, Mass, Fast Atom Bombardment
Spectrophotometry, Infrared
Time Factors
title Synthesis and study of the cluster [Pd(AuPPh 3) 6(HgNO 3)](NO 3) by reversed-phase high-performance liquid chromatography, thermoanalysis, infrared, nuclear magnetic resonance, and fast atom bombardment mass spectrometry
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